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Castro-Faix, Moraima; Duncan, Ravit Golan; Choi, Jinnie – Journal of Research in Science Teaching, 2021
Learning progressions are theoretical models that describe learning of scientific ideas and practices over time. These hypothetical progressions need to be tested and refined in order to productively inform instruction and assessment. In this paper, we report our attempts to revise a learning progression in genetics. In particular, we focused on…
Descriptors: Learning Processes, Science Education, Scientific Concepts, Genetics
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Paary Balakumar; Heather Fice; Samuel Richer; Tamara L. Western; Jacqueline Yao – International Journal for Students as Partners, 2024
Introductory science courses can be a struggle for instructors and students not only because of the challenging nature of the material, but also due to differences in the background knowledge of students. Provision of pre-lecture resources reviewing or introducing key concepts is recommended to support diverse students. In this paper, we describe…
Descriptors: Introductory Courses, Genetics, Science Instruction, Student Attitudes
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Emmylou Aspacio Borja; Romel Cayao Mutya – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2024
Mendelian genetics are essential for students seeking to comprehend the complexities of inheritance; although fundamental, these biology concepts are difficult for students to understand. This study examined the effectiveness of task-based learning (TBL) in enhancing the students' conceptual understanding of the Patterns of Mendelian Genetics. A…
Descriptors: Genetics, Concept Formation, Science Instruction, Teaching Methods
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Rusmana, Ai Nurlaelasari; Aini, Rahmi Qurota; Sya'bandari, Yustika; Ha, Minsu; Shin, Sein; Lee, Jun-Ki – Journal of Biological Education, 2021
Even though the concept of species is central in biology, the history of species concept and the existence of different species concepts are rarely discussed in biology classroom. This is unfortunate, as teachers could use the plurality of species concepts to enrich discussion in the classroom. Therefore, knowing the students' perception of…
Descriptors: High School Students, Student Attitudes, Scientific Concepts, Teaching Methods
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Katsaros, Nikolaos A.; Stasinakis, Panagiotis K. – Biochemistry and Molecular Biology Education, 2020
In this article, we present the simulation software called Aipotu and we propose a way to use it in order to promote Evolution Learning and Teaching. Through activities, included in a worksheet, students gradually gain new knowledge not only on evolution and its genetic base but on the concept of simulation and scientific modeling as well. Aipotu…
Descriptors: Evolution, Science Instruction, Teaching Methods, Learning Processes
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Peterson, Celeste N.; Tavana, Sara Z.; Akinleye, Olukemi P.; Johnson, Walter H.; Berkmen, Melanie B. – Biochemistry and Molecular Biology Education, 2020
Biology and biochemistry students must learn to visualize and comprehend the complex three-dimensional (3D) structures of macromolecules such as proteins or DNA. However, most tools available for teaching biomolecular structures typically operate in two dimensions. Here, we present protocols and pedagogical approaches for using immersive augmented…
Descriptors: Teaching Methods, Molecular Structure, Computer Software, Biochemistry
Menendez, David; Mathiaparanam, Olympia N.; Liu, David; Seitz, Vienne; Alibali, Martha W.; Rosengren, Karl S. – CBE - Life Sciences Education, 2020
Two foundational concepts in biology education are 1) offspring are not identical to their parents, and 2) organisms undergo changes throughout their lives. These concepts are included in both international and U.S. curricular standards. Research in psychology has shown that children often have difficulty understanding these concepts, as they are…
Descriptors: Biology, Science Instruction, Visual Aids, Scientific Concepts
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Cano, Junar S.; Olvis, Paul R.; Disca, Berlita Y.; Docena, Aida F. – International Journal of Technology in Education, 2022
The essence of Genetics lies in the understanding of the concepts of Central Dogma of Molecular Biology. Although these ideas are fundamental to the field, they are notoriously difficult to understand and visualize. While simulation-based instructional materials are found to improve the teaching-learning process in science education, little has…
Descriptors: Molecular Biology, Science Instruction, Scientific Concepts, Genetics
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Goudsouzian, Lara K.; Lo, Stanley M. – Advances in Physiology Education, 2023
Problem-based learning encourages students to deepen their understanding of a concept by working through a real-world example of course content. Case studies represent a form of problem-based learning that engages students in realistic scenarios to achieve a deeper understanding of concepts. Case studies have been shown to facilitate the learning…
Descriptors: Case Studies, Genetics, Molecular Biology, Science Instruction
Lindsey Beth L'Ecuyer – ProQuest LLC, 2024
Biology and biotechnology are increasingly ubiquitous and genome research will define the 21st century as the century of biology (Venter & Cohen, 2004). Comprehension of biology is needed to engage with major public policy issues and to make informed decisions (Barton & Uphadyay, 2010; Ladson-Billings, 2003; NRC, 2012; Walker, 2021).…
Descriptors: Learning Disabilities, Students with Disabilities, Biology, Science Instruction
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Russell, Terry; McGuigan, Linda – Primary Science, 2019
The research completed by the authors into the teaching and learning of evolution and inheritance (2014 to 2018) seeks to understand the demands made by the revised National Curriculum in England (DfE, 2015) and to offer support. The commitment of the authors to applied research assumes more useful outcomes are likely when studies are conducted…
Descriptors: Teaching Methods, Learning Processes, Evolution, National Curriculum
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Hansen, Janice; Richland, Lindsey Engle – CBE - Life Sciences Education, 2020
Reasoning about visual representations in science requires the ability to control one's attention, inhibit attention to irrelevant or incorrect information, and hold information in mind while manipulating it actively--all aspects of the limited-capacity cognitive system described as humans' executive functions. This article describes pedagogical…
Descriptors: Teaching Methods, Science Instruction, Attention Control, Executive Function
Hansen, Janice; Richland, Lindsey – Grantee Submission, 2020
Reasoning about visual representations in science requires the ability to control one's attention, inhibit attention to irrelevant or incorrect information, and hold information in mind while manipulating it actively--all aspects of the limited capacity cognitive system described as humans' Executive Functions (EFs) (see Diamond, 2002). This…
Descriptors: Teaching Methods, Science Instruction, Attention Control, Executive Function
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Todd, Amber; Romine, William L. – International Journal of Science Education, 2017
Research in learning progressions (LPs) has been essential towards building understanding of how students' ideas change over time. There has been little work, however, into how ideas between separate but related constructs within a multi-faceted LP relate. The purpose of this paper is to elaborate on the idea of "progression webs" to…
Descriptors: Science Instruction, Biology, Genetics, Undergraduate Students
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Cano, Junar S. – International Society for Technology, Education, and Science, 2021
The essence of Genetics lies in the understanding of the concepts of Central Dogma of Molecular Biology. Although these ideas are fundamental to the field, they are notoriously difficult to understand and visualize. While simulation-based instructional materials are found to improve the teaching-learning process in science education, little has…
Descriptors: Instructional Materials, Molecular Biology, Science Instruction, Scores
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